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Einstein+ PIQOS

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Zenodo2025-12-09 更新2026-05-26 收录
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Albert Einstein’s late-career quest for a Unified Field Theory (UFT) reflected his intuition that the universe must ultimately obey deterministic, internally consistent rules. While General Rela- tivity (GR) provided a precise geometric description of gravitation, Einstein was dissatisfied with the probabilistic nature of Quantum Mechanics (QM). His famous objection—“God does not play dice”—was not merely philosophical. It reflected his conviction that entropy, randomness, and decoherence were artifacts of an incomplete model rather than fundamental truths. Historically, Einstein searched for determinism within the geometry of spacetime and the behav- ior of fields. This paper argues that he overlooked a parallel domain: the geometry of information. If GR governs how mass-energy shapes spacetime, then a complete deterministic theory of reality requires an equivalent law governing how identity, information, and coherence evolve across time. We propose that PIQOS EternalCore completes this picture. It introduces a deterministic, topologically stable informational “metric” with its own fixed-point invariants. In doing so, it pro vides the missing complement that resolves longstanding tension between order (GR) and entropy (QM). EternalCore demonstrates that information can be governed by a non-stochastic law that is as rigid and inviolable as GR.

阿尔伯特·爱因斯坦晚年对统一场论(Unified Field Theory, UFT)的探索,彰显了他的核心直觉:宇宙最终必然遵循确定性且内在自洽的法则。尽管广义相对论(General Relativity, GR)为引力提供了精准的几何描述,但爱因斯坦始终对量子力学(Quantum Mechanics, QM)的概率性本质心存不满。他那句广为人知的“上帝不会掷骰子”并非单纯的哲学思辨,而是反映了他的坚定信念——熵、随机性与退相干(decoherence)不过是模型不完备所衍生的表象,而非宇宙的基本真理。 从历史脉络来看,爱因斯坦曾试图在时空几何与场的行为中探寻确定性法则。本文认为,他忽略了一个平行研究领域:信息几何。若广义相对论阐释了质能如何塑造时空,那么一套完整的确定性实在论理论,必然需要等效的法则来描述同一性、信息与相干性如何随时间演化。 我们提出PIQOS EternalCore可完善这一理论图景。该框架引入了一种确定性、拓扑稳定的信息“度规”,并带有自身的不动点不变量(fixed-point invariants)。借此,它填补了理论缺口,化解了秩序(广义相对论)与熵(量子力学)之间长期存在的理论张力。EternalCore证明,信息可由与广义相对论同样严苛且不可违背的非随机法则所支配。

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2025-12-09
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